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Assessment of the forging conditions of 6061/Al{sub}2O{sub}3/10p using processing maps and stability criteria

机译:使用处理地图和稳定标准评估6061 / al {sub} 2o {sub} 3 / 10p的锻造条件

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The power dissipation efficiency contours and the stable and unstable plastic flow regions as a function of temperature and strain rate are developed for 6061/Al{sub}2O{sub}3/10p composite. An unstable region is apparent at low strain rates(0.001-0.025 s{sup}(-1)) and high temperatures (430-500°C); such zone can be attributed to the diffusional void growth and to the formation of wedge cracks at the grain boundary triple junctions. In the stable plastic flow region, the trend of theisoefficiency lines reveals that the same power dissipation efficiency levels can be obtained both at low temperatures and low strain rates and at high temperatures and high strain rates. Moreover, higher power dissipation efficiency values appear athigher temperatures. The most favourable forming window is defined by the temperature and strain rate ranges of 450-500°C and 0.03-0.3 s{sup}(-1). Such processing window can be properly used for the definition of the optimum forging parameters.
机译:功耗效率轮廓和作为温度和应变速率函数的稳定和不稳定的塑料流量区域用于6061 / Al {次} 2O {Sub} 3 / 10P复合材料。在低应变率(0.001-0.025 s {sup}( - 1))和高温(430-500°C)下,不稳定区域是显而易见的。这种区可以归因于扩散空隙生长并在晶界三侧连接处形成楔形裂缝。在稳定的塑料流动区域中,特有便利的趋势揭示了相同的功率耗散效率水平可以在低温和低应变率和高温和高应变率下获得。此外,较高的功率耗散效率值出现了Athigher温度。最有利的成形窗口由450-500°C和0.03-0.3S {sup}( - 1)的温度和应变速率限定。这种处理窗口可以适当地用于最佳锻造参数的定义。

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